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LP2992IM5-3.0/NOPB 数据表(PDF) 19 Page - Texas Instruments |
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LP2992IM5-3.0/NOPB 数据表(HTML) 19 Page - Texas Instruments |
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19 / 43 page ![]() For a CMOS regulator, the dropout voltage is determined by the drain-source on-state resistance (RDS(ON)) of the pass transistor. Therefore, if the linear regulator operates at less than the rated current, the dropout voltage for that current scales accordingly. The following equation calculates the RDS(ON) of the device. R = DS(ON) V DO I RATED (1) 6.3.3 Current Limit 6.3.3.1 Current Limit (Legacy Chip) The internal current-limit circuit protects the LDO against high-current faults or shorting events. The LDO is not designed to operate in a steady-state current limit. During a current-limit event, the LDO sources constant current. Therefore, the output voltage falls when the output impedance decreases. If current limit occurs and the resulting output voltage is low, excessive power is potentially dissipated across the LDO, resulting in a thermal shutdown of the output. The LP2992 features a foldback current limit that allows a high peak current when VOUT > 0.5V. The device then reduces the maximum output current when VOUT is forced to ground. 6.3.3.2 Current Limit (New Chip) The device has an internal current limit circuit that protects the regulator during transient high-load current faults or shorting events. The current limit is a brick-wall scheme. In a high-load current fault, the brick-wall scheme limits the output current to the current limit (ICL). ICL is listed in the Electrical Characteristics table. The output voltage is not regulated when the device is in current limit. When a current limit event occurs, the device begins to heat up because of the increase in power dissipation. When the device is in brick-wall current limit, the pass transistor dissipates power [(VIN – VOUT) × ICL]. If thermal shutdown is triggered, the device turns off. After the device cools down, the internal thermal shutdown circuit turns the device back on. If the output current fault condition continues, the device cycles between current limit and thermal shutdown. For more information on current limits, see the Know Your Limits application note. Figure 6-1 shows a diagram of the current limit. VOUT(NOM) 0 V 0 mA VOUT ICL IRATED IOUT Brickwall Figure 6-1. Current Limit 6.3.4 Undervoltage Lockout (UVLO) The device has an independent undervoltage lockout (UVLO) circuit that monitors the input voltage, allowing a controlled and consistent turn on and off of the output voltage. To prevent the device from turning off if the input drops during turn on, the UVLO has hysteresis as specified in the Electrical Characteristics table. www.ti.com LP2992 SNVS171L – NOVEMBER 2001 – REVISED FEBRUARY 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 19 Product Folder Links: LP2992 |
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